Vukicevic Marija, Weder Gilles, Boillat Aurélien, Boesch Anne, Kellenberger Stephan
Département de Pharmacologie et de Toxicologie, Université de Lausanne, Switzerland.
J Biol Chem. 2006 Jan 13;281(2):714-22. doi: 10.1074/jbc.M510472200. Epub 2005 Nov 9.
Acid-sensing ion channels (ASICs) are neuronal Na(+) channels that are members of the epithelial Na(+) channel/degenerin family and are transiently activated by extracellular acidification. ASICs in the central nervous system have a modulatory role in synaptic transmission and are involved in cell injury induced by acidosis. We have recently demonstrated that ASIC function is regulated by serine proteases. We provide here evidence that this regulation of ASIC function is tightly linked to channel cleavage. Trypsin cleaves ASIC1a with a similar time course as it changes ASIC1a function, whereas ASIC1b, whose function is not modified by trypsin, is not cleaved. Trypsin cleaves ASIC1a at Arg-145, in the N-terminal part of the extracellular loop, between a highly conserved sequence and a sequence that is critical for ASIC1a inhibition by the venom of the tarantula Psalmopoeus cambridgei. This channel domain controls the inactivation kinetics and co-determines the pH dependence of ASIC gating. It undergoes a conformational change during inactivation, which renders the cleavage site inaccessible to trypsin in inactivated channels.
酸敏感离子通道(ASICs)是神经元钠离子通道,属于上皮钠离子通道/退化蛋白家族成员,可被细胞外酸化短暂激活。中枢神经系统中的ASICs在突触传递中具有调节作用,并参与酸中毒诱导的细胞损伤。我们最近证明,ASIC功能受丝氨酸蛋白酶调节。我们在此提供证据表明,ASIC功能的这种调节与通道切割紧密相关。胰蛋白酶切割ASIC1a的时间进程与其改变ASIC1a功能的时间进程相似,而其功能未被胰蛋白酶改变的ASIC1b则未被切割。胰蛋白酶在胞外环N端的精氨酸-145处切割ASIC1a,该位置位于一个高度保守序列和一个对狼蛛Psalmopoeus cambridgei毒液抑制ASIC1a至关重要的序列之间。该通道结构域控制失活动力学,并共同决定ASIC门控的pH依赖性。它在失活过程中发生构象变化,使失活通道中的切割位点对胰蛋白酶不可达。